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首页> 外文期刊>Archives of Biochemistry and Biophysics >Kinetic, mutagenic, and structural homology analysis of l-serine dehydratase from Legionella pneumophila
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Kinetic, mutagenic, and structural homology analysis of l-serine dehydratase from Legionella pneumophila

机译:嗜肺军团菌L-丝氨酸脱水酶的动力学,诱变和结构同源性分析

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A structural database search has revealed that the same fold found in the allosteric substrate binding (ASB) domain of Mycobacterium tuberculosis D-3-phosphoglycerate dehydrogenase (PGDH) is found in l-serine dehydratase from Legionella pneumophila. The M. tuberculosis PGDH ASB domain functions in the control of catalytic activity. Bacterial l-serine dehydratases are 4Fe-4S proteins that convert l-serine to pyruvate and ammonia. Sequence homology reveals two types depending on whether their α and β domains are on the same (Type 2) or separate (Type 1) polypeptides. The α domains contain the catalytic iron-sulfur center while the β domains do not yet have a described function, but the structural homology with PGDH suggests a regulatory role. Type 1 β domains also contain additional sequence homologous to PGDH ACT domains. A continuous assay for l-serine dehydratase is used to demonstrate homotropic cooperativity, a broad pH range, and essential irreversibility. Product inhibition analysis reveals a Uni-Bi ordered mechanism with ammonia dissociating before pyruvate. l-Threonine is a poor substrate and l-cysteine and d-serine are competitive inhibitors with K _i values that differ by almost 10-fold from those reported for Escherichia coli l-serine dehydratase. Mutagenesis identifies the three cysteine residues at the active site that anchor the iron-sulfur complex.
机译:结构数据库搜索显示,在结核分枝杆菌D-3-磷酸甘油酸脱氢酶(PGDH)的变构底物结合(ASB)域中发现的折叠相同,是在嗜肺军团杆菌的L-丝氨酸脱水酶中发现的。结核分枝杆菌PGDH ASB结构域在催化活性的控制中起作用。细菌l-丝氨酸脱水酶是4Fe-4S蛋白,可将l-丝氨酸转化为丙酮酸和氨。序列同源性揭示了两种类型,这取决于它们的α和β结构域是在相同(类型2)还是在单独(类型1)多肽上。 α结构域包含催化的铁硫中心,而β结构域尚未具有所描述的功能,但与PGDH的结构同源性表明其具有调节作用。 1型β结构域还包含与PGDH ACT结构域同源的其他序列。对l-丝氨酸脱水酶的连续测定用于证明各向同性的协同作用,较宽的pH范围和基本的不可逆性。产物抑制分析揭示了Uni-Bi有序的机制,其中丙酮在丙酮酸分解之前会解离。 l-苏氨酸是较差的底物,而l-半胱氨酸和d-丝氨酸是竞争性抑制剂,其K _i值与报道的大肠杆菌L-丝氨酸脱水酶的K_i值相差近10倍。诱变确定了锚定铁硫复合物的活性位点的三个半胱氨酸残基。

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